KucherN. K., Deformation of layered glass fibre reinforced plastics reinforced with satin-weave fabric at room and low temperatures. Mekhanika Kompozitnykh Materialov, 40, No. 3, 2004, pp. 341–354.
2.
ChouT. W., and KoF. K. (eds), Textile Structural Composites.Elsevier, Amsterdam–Oxford–New York–Tokyo, 1989.
3.
AbramchukS. S., Determination of the elastic modulus of threads of polymer fibres. Mekhanika Kompozitnykh Materialov, No. 3, 1984, pp. 579–583.
4.
AbramchukS. S., Assessment of the characteristics of reinforcing fibres by testing them in bunches. Mekhanika Kompozitnykh Materialov, No. 1, 1984, pp. 3–7.
5.
ChernousD. A., and Shil'koS. V., Description of the stress–strain diagram of twisted threads. Plast. Massy, No. 7, 2006, pp. 15–18.
6.
DmitrenkoV. P., Modern approach to designing fibrous semiproducts of thermoplastic composite materials. Plast. Massy, No. 5, 2005, pp. 35–38.
7.
FerryJ. D., Viscoelastic properties of polymers.New York–London, 1961, 530 pp.
8.
MozharovskiiV. V., and StarzhinskiiV. E., Applied Mechanics of Layered Bodies of Composites: Plane Contact Problems.Nauka i Tekhnika, Minsk, 1988, 271 pp.
9.
StarovoitovE. I., Principles of theory of elasticity, plasticity, and viscoelasticity.BelGUT, Gomel', 2001, 344 pp.
10.
KornG., and KornT., Mathematics Handbook for Scientific Colleagues and Engineers.Nauka, Moscow, 1968, 720 pp.